首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Impact of Oscillating IMF B-z During 17 March 2013 Storm on the Distribution of Plasma Over Indian Low-Latitude and Mid-Latitude Ionospheric Regions
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Impact of Oscillating IMF B-z During 17 March 2013 Storm on the Distribution of Plasma Over Indian Low-Latitude and Mid-Latitude Ionospheric Regions

机译:振荡IMF B-Z在2013年3月17日暴风雨中对印度低纬度和中纬离子电离层区等离子体分布的影响

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We show evidence of a positive ionospheric storm occurring simultaneously at the equatorial, low-latitude and mid-latitude ionospheric regions in the Indian sector in response to an intense geomagnetic storm on 17 March 2013. The storm had its onset time coinciding with the local noon. An on-site digisonde at Trivandrum (dip equator) recorded a sharp decrease in the height of F region peak in the afternoon, which is a signature of westward electric field associated with a counter electrojet (CEJ). Coupled with it was a simultaneous increase in total electron content (TEC) in the entire Indian region. The magnitude of increase in TEC decreased slowly northward of the dip equator and had almost no change near the anomaly crest. Farther northward of the anomaly crest, the TEC started increasing again and at Shimla, a mid-latitude station, it had a value close to 2 times its monthly mean. We surmise that the westward electric field resulting from the CEJ pushed the F layer at the dip equator down to the altitude regions where recombination and diffusion played minimal roles. No loss of plasma due to diffusion while photoproduction of ions was still taking place, led to an enhancement in the electron density near the equatorial/low-latitude region. The Joule heating of the thermosphere, on the other hand, gave rise to the traveling atmospheric disturbances which pushed the plasma up in altitude at the equatorial anomaly region. It supplemented the loss of plasma at the anomaly crest region resulting in no change in the TEC thereat and a marked increase in the TEC in the mid-latitude ionosphere.
机译:我们展示了在印度部门的赤道,低纬度和中纬度电离层区域同时发生的正电离层风暴的证据,以应对2013年3月17日激烈的地磁风暴。风暴将其发病时间与当地的中午恰逢其时。 Trivandrum(DIP赤道)的现场Digisonde在午后记录了F区域峰值高度的急剧下降,这是与计数器电气喷射(CEJ)相关的向西电场的特征。再加上整个印度区域中的电子含量(TEC)的同时增加。 TEC的增加的幅度缓慢降低了DIP赤道,并且在异常嵴附近几乎没有变化。异常崎岖的异常北方的北方,TEC再次开始越来越多,在中纬度站,它的价值接近其每月意味着的2倍。我们推出由CEJ产生的向西电场推动DIP赤道的F层向下推到完全区域,其中重组和扩散起到最小的角色。由于扩散而导致等离子体没有损失,而离子的光洗脱,则导致赤道/低纬度区域附近的电子密度提高。另一方面,热圈的焦耳加热升起了行进的大气干扰,这在赤道异常区域推动了高度的等离子体。它补充了异常嵴区域的血浆损失,导致TEC的不变化,中纬电离层中的TEC显着增加。

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